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Modeling of photovoltaic array and simulation of adaptive hysteresis current controlled inverter for solar application

机译:太阳能光伏阵列的建模与自适应磁滞电流控制逆变器仿真

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Photovoltaic inverters are used to convert the D.C power produced by the solar photovoltaic cell into AC. This paper presents a novel Adaptive Hysteresis Current Controller to control the inverter used in the solar photovoltaic cell. The proposed controller is capable of reducing the total harmonic distortion and to provide constant switching frequency. The mathematical model of Photovoltaic array is developed using the Newton's method using the parameter obtained from a commercial photovoltaic data sheet under variable weather conditions, in which the effect of irradiance and temperature are considered. The modeled Photovoltaic array is interfaced with DC-DC boost converter, AC-DC inverter and load. A DC-DC boost converter is used to step up the input DC voltage of the inverter converts the input DC comes from boost converter into AC. The performance of the proposed controller of inverter is evaluated through MATLAB-Simulation. The results obtained with the proposed algorithm are compared with those obtained when using conventional fixed hysteresis current controller for single-phase photovoltaic inverter in terms of THD and switching frequency.
机译:光伏逆变器用于将太阳能光伏电池产生的D.C功率转换为AC。本文介绍了一种新型自适应滞后电流控制器,用于控制太阳能光伏电池中使用的逆变器。所提出的控制器能够降低总谐波失真并提供恒定的开关频率。光伏阵列的数学模型使用牛顿的方法使用在可变天气条件下的商业光伏数据表中获得的参数,其中考虑了辐照度和温度的效果。模型的光伏阵列与DC-DC升压转换器,AC-DC逆变器和负载接口。 DC-DC Boost转换器用于加入逆变器的输入DC电压转换输入DC来自升压转换器进入AC。通过MATLAB模拟评估所提出的逆变器控制器的性能。使用该算法获得的结果与在THD和开关频率方面使用传统固定滞后电流控制器时获得的单相光伏逆变器获得的结果。

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